HIGH TEMPERATURE ANTENNAS: A REVIEW

HIGH TEMPERATURE ANTENNAS: A REVIEW
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DOI:
10.2528/pierb22030704
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发表时间:
2022
影响因子:
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通讯作者:
B. Younes;M. S. I. Sagar;Asif I. Omi;Noah Riley Allison;Danielle Gedlick;P. Sekhar
B. Younes;M. S. I. Sagar;Asif I. Omi;Noah Riley Allison;Danielle Gedlick;P. Sekhar
中科院分区:
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文献类型:
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作者:
B. Younes;M. S. I. Sagar;Asif I. Omi;Noah Riley Allison;Danielle Gedlick;P. Sekhar

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随着先进导弹、无人机系统和现代核反应堆的部署,太空探索和太空战争的到来重新点燃了高温天线的领域(CID:12)。在此背景下,本文调查了在通常以高温为特征的恶劣环境下工作的天线的(CID:12)ELD。在此背景下,本文对高温天线的(CID:12)场效应进行了综述。讨论了实现天线的基板和导体的选择,重点讨论了它们的热学和电学性能。此外,还讨论了实现该天线的不同ff制作技术。给出了不同类型ff高温天线的性能比较。最后,展望了极端环境下天线研究的发展前景和面临的挑战。文章最后对(CID:12)领域中可在恶劣条件下工作的(CID:13)可伸缩天线的新发展进行了洞察。
|The advent of space exploration and space warfare along with the deployment of advanced missiles, unmanned aircraft systems, and modern nuclear reactors has reignited the (cid:12)eld of high temperature antennas. In this context, this article surveys the (cid:12)eld of antennas that operate under harsh environments that are often characterized by high temperature. In this context, this article surveys the (cid:12)eld of high temperature antennas. The choice of the substrate and the conductor for antenna implementation are discussed with emphasis on their thermal and electrical properties. Further, the different fabrication techniques to realize the antenna are discussed. The performance comparison of the different types of high temperature antennas are presented. Finally, the future prospects and inherent challenges in advancing research on antennas for extreme environments are detailed. The article concludes with insights into the new developments in the (cid:12)eld of (cid:13)exible antennas operable in hostile conditions.